论文标题

SIN微孔子中呼吸孤子的频率稳定和调整

Frequency stabilization and tuning of breathing soliton in SiN microresonators

论文作者

Wan, Shuai, Niu, Rui, Wang, Zheng-Yu, Peng, Jin-Lan, Li, Ming, Li, Jin, Guo, Guang-Can, Zou, Chang-Ling, Dong, Chun-Hua

论文摘要

耗散的Kerr Soliton提供了宽带相干和低噪声频率梳子和稳定的颞脉冲序列,在光谱,通信和计量学中显示出巨大的潜在应用。呼吸孤子是脉冲持续时间和峰值强度显示周期性振荡的特殊耗散的Kerr孤子。但是,呼吸唯一的噪音和稳定性仍未开发,这将是未来应用的主要障碍。在这里,我们研究了氮化硅(SIN)微孔中的呼吸耗散性Kerr孤子,而在模拟和实验中,呼吸器期在MHz周围显示不确定性。通过施加调制泵,可以将呼吸频率置于调制中,并在数十MHz上调节频率噪声,从而显着抑制。我们的演示提供了一种替代旋钮,用于控制微孔子中的孤子动力学,并为呼吸孤子的实际应用铺平了新的途径。

Dissipative Kerr soliton offers broadband coherent and low-noise frequency comb and stable temporal pulse train, having shown great potential applications in spectroscopy, communications, and metrology. Breathing soliton is a particular dissipative Kerr soliton that the pulse duration and peak intensity show periodic oscillation. However, the noise and stability of the breathing soliton is still remaining unexplored, which would be the main obstacle for future applications. Here, we have investigated the breathing dissipative Kerr solitons in the silicon nitride (SiN) microrings, while the breather period shows uncertainties around MHz in both simulation and experiments. By applying a modulated pump, the breathing frequency can be injectively locked to the modulation and tuned over tens of MHz with frequency noise significantly suppressed. Our demonstration offers an alternative knob for the controlling of soliton dynamics in microresonator and paves a new avenue towards practical applications of breathing soliton.

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